4.7 Article

Promoted Interaction of C/EBPα with Demethylated Cxcr3 Gene Promoter Contributes to Neuropathic Pain in Mice

Journal

JOURNAL OF NEUROSCIENCE
Volume 37, Issue 3, Pages 685-700

Publisher

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.2262-16.2017

Keywords

astrocyte; CEBP alpha; CXCL10; CXCR3; demethylation; neuropathic pain

Categories

Funding

  1. National Natural Science Foundation of China (NSFC) [31371121, 81300954, 81400915, 31671091]
  2. National Science Foundation for Young Scientists of Jiangsu Province [BK20140427]
  3. Natural Science Research Program of Jiangsu Province [13KJB180017]
  4. Innovation Fund for Graduate Students in Nantong University [YKC16021]
  5. Priority Academic Program Development of Jiangsu Higher Education Institutions

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DNA methylation has been implicated in the pathogenesis of chronic pain. However, the specific genes regulated by DNA methylation under neuropathic pain condition remain largely unknown. Here we investigated how chemokine receptor CXCR3 is regulated by DNA methylation and how it contributes to neuropathic pain induced by spinal nerve ligation (SNL) in mice. SNL increased Cxcr3 mRNA and protein expression in the neurons of the spinal cord. Meanwhile, the CpG (5'-cytosine-phosphate-guanine-3') island in the Cxcr3 gene promoter region was demethylated, and the expression of DNA methyltransferase 3b (DNMT3b) was decreased. SNL also increased the binding of CCAAT (cytidine-cytidine-adenosine-adenosine-thymidine)/enhancer binding protein alpha (C/EBP alpha) with Cxcr3 promoter and decreased the binding of DNMT3b with Cxcr3 promoter in the spinal cord. C/EBP alpha expression was increased in spinal neurons after SNL, and inhibition of C/EBP alpha by intrathecal small interfering RNA attenuated SNL-induced pain hypersensitivity and reduced Cxcr3 expression. Furthermore, SNL-induced mechanical allodynia and heat hyperalgesia were markedly reduced in Cxcr3(-/-) mice. Spinal inhibition of Cxcr3 by shRNA or CXCR3 antagonist also attenuated established neuropathic pain. Moreover, CXCL10, the ligand of CXCR3, was increased in spinal neurons and astrocytes after SNL. Superfusing spinal cord slices with CXCL10 enhanced spontaneous EPSCs and potentiated NMDA-induced and AMPA-induced currents of lamina II neurons. Finally, intrathecal injection of CXCL10 induced CXCR3-dependent pain hypersensitivity in naive mice. Collectively, our results demonstrated that CXCR3, increased by DNA demethylation and the enhanced interaction with C/EBP alpha, can be activated by CXCL10 to facilitate excitatory synaptic transmission and contribute to the maintenance of neuropathic pain.

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